ENERGY SECURITY AND EFFICIENCY IMPROVEMENT SYSTEM
Patent Information
- Application Number
- TR202420083
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-06-22
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Figure 00000011_0000
Abstract
Description
1 TARIFF ENERGY SECURITY AND EFFICIENCY IMPROVEMENT SYSTEM Technical Area This invention improves the energy security of equipment in telecommunications infrastructure. integrated with renewable energy sources to increase efficiency It is related to a system that enables them to be done. Previous Tech 10 In telecommunications infrastructures, energy is generally obtained from central electricity grids. This system provides energy distribution to large areas, but it also avoids power outages. Or, in the event of network failures, resilience issues may arise. Traditional Methods include backup systems such as generators and batteries. These systems are 15 Although used as a measure against power outages, it is dependent on the use of fossil fuels. Because of this, it has a high environmental impact and can be costly. Energy monitoring and Energy consumption is managed using optimization software. However, These systems can only monitor data regarding local energy production and distribution. It may contain shortcomings. These shortcomings are: 20 •Vulnerability to interruptions: Dependence on central energy sources, grid These outages can cause disruptions to telecommunications services. •High Cost: Traditional systems like generators are expensive, It is not economically viable in the long run. •Environmental Impacts: Fossil fuel consumption leads to high carbon emissions, amounting to 25%. It harms the environment. •Lack of Flexibility: These solutions are not resistant to local energy production fluctuations. It is not flexible enough. 2 For this reason, renewable energy sources are integrated into telecommunications infrastructures. ensuring that infrastructure equipment provides continuous and environmentally friendly service. A new system is needed. U.S. patent number US11581741B2, which is included in the prior art, 5 The document describes machine learning integrated into telecommunications infrastructures. to optimize energy production, consumption and storage This refers to a structured microgrid model. Brief Description of the Invention 10 The aim of this invention is to improve the energy safety of equipment in telecommunications infrastructure. and integrated with renewable energy sources to increase its efficiency The goal is to create a system that enables them to be treated this way. Detailed Description of the Invention The "Energy Security and Efficiency" project was carried out to achieve the purpose of this invention. The "Increase System" is shown in the attached figure; Figure 1. Schematic view of the system described in the invention. The parts shown in the figure are individually numbered, and the corresponding numbers correspond to these numbers. given below: 1. System 2. Telecommunication device 3. Energy production element 4. Energy storage element 5. Server 30 3 Energy security and efficiency of equipment in telecommunications infrastructure. to enable their integration with renewable energy sources in order to increase The subject of the invention is the system (1); - Used to provide telecommunication services and requiring electrical energy. at least one telecommunication device located in the telecommunication infrastructure that hears 5 (2), - at least one energy production element capable of generating renewable energy (3), - energy production element (3) that stores the energy it produces and telecommunications In order for this energy to be supplied to the device (2), at least one energy source must be connected. storage element (4) and 10 - Real-time data of energy production and consumption of energy production elements (3) monitoring of the amount of energy stored in the energy storage element (4) to be made, all telecommunication devices in the telecommunication infrastructure (2) by monitoring energy consumption data and thanks to artificial intelligence algorithms by predicting the energy consumption of telecommunication devices (2) the electricity grid and 15 Creating the most efficient usage scenario among stored energy It includes at least one server (5) providing. The telecommunication device (2) included in the system that is the subject of the invention (1), 5G devices, Network devices for internet access points, 20 operating on cloud infrastructure. devices in the telecommunications infrastructure in the form of access points These are equipment. Telecommunication device (2), energy storage elements (4) being connected and obtaining the energy it needs to operate from this source. It is structured as follows: The telecommunication device (2) is connected to the city electricity grid. being connected and obtaining the energy it needs to operate from here 25 It is structured in such a way. The telecommunication device (2) is any remote communication connected to server (5) via protocol and by server (5) It is structured to be managed. The telecommunication device (2) has the most It has a small sensor, and thanks to that sensor, it can monitor the health of its components. so that it can be monitored by the server (5) so that possible failures can occur before 30 It is structured to allow for maintenance plans to be made first. 4 The energy production element (3) in the system (1) that is the subject of the invention is a solar panel, wind turbines, wave energy systems, biomass energy systems, geothermal energy microgrids (small-scale modular systems) that produce renewable energy in this form. Energy systems are structures. Energy production element (3), energy storage element (4) 5 in connection with and to enable the storage of the energy produced. It is structured. The energy production element (3) has at least one sensor on it. and thanks to the sensor, the health of its components is monitored by the server (5). so that maintenance plans can be monitored before potential malfunctions occur. It is structured to allow the production of energy elements (3), 10 connected to the server (5) via any remote communication protocol, It is configured to be managed by the server (5). The energy storage element (4) in the system in question (1) is a battery, The energy produced by the energy production element (3) is then used for 15 It is structured to enable storage. Energy storage element (4), It has at least one sensor, and thanks to the sensor, it can control the components it possesses. so that its health can be monitored by the server (5) so that possible malfunctions to allow maintenance plans to be made before it happens is structured. Energy storage element (4), any remote communication 20 connected to server (5) via protocol and by server (5) It is structured to be managed. The server (5) in the system that is the subject of the invention (1) is one of the telecommunication devices (2) Information about operating status, electrical connection status, and electricity consumption data 25 to ensure the collection and recording of this data It is structured. The server (5) is produced by the energy production elements (3). the collection of data on the amount and rate of energy and the recording of the collected data. It is configured to ensure that the server (5) is kept under energy. The amount of energy stored in the storage element (4) and the depletion of this energy 30 the collection of data on speed / usage status and the recording of the collected data. It is configured to ensure that it is kept under control. Server (5), Energy produced, stored, and consumed to provide telecommunications services. performing analysis on data using artificial intelligence algorithms and energy To ensure that planning is done to use resources in the most efficient way. It is structured accordingly. The server (5) is telecommunications 5 in line with the planning. If energy cannot be supplied to the devices (2) from the electricity grid, energy storage To obtain energy from element (4), activate the energy storage element (4). It is configured to receive. The server (5) has high energy consumption times. They are structured to anticipate and manage storage capacities accordingly. The server (5) draws 10 from the energy storage tanks during times of high energy consumption. to benefit from it, and to charge the storage units during periods of low consumption. It is structured to provide the energy produced to the consumer. The server (5) delivers the energy produced to the consumer. storing or directly according to their demands and optimization requirements. It is configured to direct consumption. Server (5), real-time monitoring of the energy needs of telecommunication devices (2) and 15 It is structured to ensure optimization. Industrial Application of the Invention The system in question (1) improves the energy efficiency of telecommunication devices by 20 to increase, reduce energy costs and promote sustainable energy use It has been developed to provide this. Thanks to AI-based energy optimization. Energy production, storage, and consumption processes are managed in the most efficient way. Around these fundamental concepts, the invention is called “Energy Security and Efficiency Improvement 25 It is possible to develop a wide variety of applications related to the System (1)”, and the invention This cannot be limited to the examples described here, but is primarily stated in the claims. It is like that.
Claims
6 REQUESTS 1. Energy security of equipment in telecommunications infrastructure and integrated with renewable energy sources to increase efficiency 5 that enable them to be done -used to provide telecommunication services and powered by electricity at least one of the telecommunications infrastructures that need it telecommunication device (2), - at least one energy production element capable of generating renewable energy (3), - energy production element (3) which stores the energy it produces and 10 In order to supply this energy to the telecommunication device (2), a connection at least one energy storage element (4) and - real energy production and consumption data of energy production elements (3) monitoring in time, energy stored in the energy storage element (4) monitoring the amount, all 15 in the telecommunications infrastructure monitoring of energy consumption data of telecommunication devices (2) and telecommunication devices (2) thanks to artificial intelligence algorithms by predicting energy consumption between the electricity grid and stored energy. at least one server that enables the creation of the most efficient use case. A system characterized by (5) (1). 20 2. 5G devices, network devices for internet access points, cloud infrastructure telecommunication infrastructure in the form of access points for devices operating on it telecommunication device (2) characterized by the equipment in its structure A system like the one in Request 1 (1). 25 3. To work in connection with energy storage elements (4). structured to obtain the energy it needs from here as in Claim 1 or 2 characterized by telecommunication device (2). a system (1). 30 7 4. Connected to the city's electricity grid and having the necessary equipment to work. structured to obtain the energy it needs from here from the above requests characterized by telecommunication device (2) a system like any other (1).
5. Connect to the server (5) via any remote communication protocol. is configured to be managed by the server (5) from the above requests characterized by telecommunication device (2) a system like any other (1).
6. It has at least one sensor, and thanks to that sensor, it possesses... so that the health of the components can be monitored by the server (5) To allow maintenance plans to be made before potential failures occur. characterized by the telecommunication device (2) structured in such a way a system like any of the above requests (1). 15 7. Solar panels, wind turbines, wave energy systems, biomass energy. renewable energy producing systems, in the form of geothermal energy systems microgrid (small-scale modular energy systems) are energy structures. Any of the above-mentioned requirements characterized by the production element (3) 20 a system like one of them (1).
8. It is connected to the energy storage element (4) and the energy produced energy production element (3) which is structured to ensure its storage A system like any of the above characterized claims 25 (1).
9. It has at least one sensor, and thanks to that sensor, it possesses... so that the health of the components can be monitored by the server (5) Allowing maintenance plans to be made before potential failures occur 30 8 characterized by the energy production element structured (3) a system like any of the above requests (1).
10. Connecting to the server (5) via any remote communication protocol. energy 5 which is configured to be managed by server (5) any of the above requirements characterized by the production element (3) a system like one of them (1).
11. It is a battery and the energy produced by the energy production element (3) is more energy structured to be stored for later use 10 any of the above requests characterized by storage element (4) a system like one of them (1).
12. It has at least one sensor and possesses certain characteristics thanks to that sensor. so that the health of the components can be monitored by the server (5) 15 To allow maintenance plans to be made before potential failures occur. characterized by the energy storage element (4) structured on a system like any of the above requests (1).
13. Connecting to the server (5) via any remote communication protocol 20 energy which is configured to be managed by the server (5) any of the above requests characterized by storage element (4) a system like one of them (1).
14. Operating status of telecommunication devices (2), electrical connection 25 their situations involve collecting information about electricity consumption data and this Server configured to keep the data on record (5) as in any of the above claims characterized by system (1). 9 15. Amount and rate of energy produced by energy production elements (3) the collection of data about and recording of the collected data characterized by the server (5) configured to ensure its retention a system like any of the above requests (1).
16. The amount of energy stored in the energy storage element (4) and this energy collecting data on depletion rate / usage status and structured to ensure that the collected data is kept on record any of the above requests characterized by the server (5) such a system (1). 10 17. Materials produced, stored, and consumed in order to provide telecommunication services. Energy data analyzed using artificial intelligence algorithms. to be implemented and energy resources to be used in the most efficient way Server (5) configured to enable planning for 15 a system like any of the above characterized claims (1).
18. In line with the planning, electricity to telecommunication devices (2) If energy cannot be supplied from the grid, then from the energy storage element (4) 20 to commission the energy storage element (4) to provide energy from the above requests characterized by the server (5) configured for a system like any other (1).
19. Anticipating periods of high energy consumption and adjusting storage capacities accordingly. characterized by the server (5) configured to manage according to a system like any of the above requests (1).
20. From energy storage facilities during times of high energy consumption. to benefit from it, and to charge the storage units during periods of low consumption. 30 The above is characterized by the server (5) configured to provide a system like any of the requests (1).
21. The energy produced is adjusted according to consumer demands and optimization requirements. 5 configured to store or direct consumption any of the above requests characterized by the server (5) such a system (1).
22. Instantaneous energy requirement of telecommunication devices (2) Server 10 configured to enable monitoring and optimization. (5) like any of the above-mentioned claims characterized by system (1). 20 30